首页> 外文会议>SAE/JSAE Small Engine Technology Conference and Exhibition >Two Small Prototype Engines Developed based on Pulsed Supermulti-Jets Colliding: Having a Potential of Thermal Efficiency Over 60 with Satisfactory Strength of Structure
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Two Small Prototype Engines Developed based on Pulsed Supermulti-Jets Colliding: Having a Potential of Thermal Efficiency Over 60 with Satisfactory Strength of Structure

机译:基于脉冲Supermulti-jets开发的两个小型原型发动机碰撞:具有超过60%的热效率,结构令人满意的结构

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In our previous reports based on computations and fluid dynamic theory, we proposed a new compressive combustion principle for an inexpensive and relatively quiet engine reactor that has the potential to achieve thermal efficiency over 50% even for small combustion chambers having less than 100 cc. This can be achieved with colliding supermulti-jets that create complete air insulation to encase burned gas around the chamber center. We originally developed two small prototype engine systems for gasoline. First one with one rotary valve for pulsating intake flow and sixteen nozzles of jets colliding has no pistons. Next, we developed the second one having a strongly-asymmetric double piston system with the supermultijets colliding, although there are no poppet valves. The second prototype engine can vary point-compression strength due to the supermulti-jets and homogeneous compression level due to piston, by changing phase and size of two gears. A motoring test done for evaluating the strength of structure shows that this engine stably works over 4000rpm. Experimental data of combustion with a starter motor indicates a possibility of stable engine start for gasoline without any plugs and thermal efficiency of the order of traditional piston engines or a little more.
机译:在我们之前的基于计算和流体动力学理论的报告中,我们提出了一种新的压缩燃烧原理,用于廉价且相对安静的发动机反应器,即使对于具有小于100cc的小燃烧室,甚至可能达到50%以上的热效率。这可以通过碰撞SuperMulti-jet来实现,这些喷射器产生完全空气绝缘,以在腔室中心包围燃烧的气体。我们最初为汽油制定了两个小型原型发动机系统。第一个具有用于脉动进气流的旋转阀的旋转阀和射流的十六个喷嘴碰撞没有活塞。接下来,我们开发了第二个具有强烈不对称双活塞系统的第二种,虽然没有提升阀,但是没有提升阀。通过改变两个齿轮的相位和尺寸,第二原型发动机由于活塞引起的超级喷射和均匀压缩水平而变化 - 压缩强度。用于评估结构强度的电动试验表明,该发动机稳定地工作超过4000rpm。与起动电机的燃烧实验数据表示汽油的稳定发动机启动的可能性,没有任何插头和传统活塞发动机的顺序的任何塞子和热效率。

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